论文标题

Zrte5中准量化大厅效应的起源5

Origin of the quasi-quantized Hall effect in ZrTe5

论文作者

Galeski, Stanislaw, Ehmcke, Toni, Wawrzynczak, Rafal, Lozano, Pedro Mercado, Cho, Kyungjune, Sharma, Ankit, Das, Souvik, Kuster, Felix, Sessi, Paolo, Brando, Manuel, Kuchler, Robert, Markou, Anastasios, Konig, Markus, Felser, Claudia, Sassa, Yasmine, Li, Qiang, Gu, Genda, Swekis, Peter, Zimmermann, Martin, Ivashko, Oleh, Gorbunov, Dennis I., Zherlitsyn, Sergei, Forster, Tobias, Parkin, Stuart, Wosnitza, Joachim, Meng, Tobias, Gooth, Johannes

论文摘要

传统上,量子大厅效应(QHE)被认为是纯粹的二维(2D)现象。最近,在Dirac半学ZRTE5中报道了QHE的三维(3D)版本。提议它是由磁场驱动的费米表面不稳定性引起的,将原始的3D电子系统转换为2D纸的堆栈。在这里,我们报告了量子厅制度中ZRTE5上的热力学,热电和电荷传输测量。测得的热力学特性:磁化和超声传播,没有符号的签名,这与场地单晶体X射线衍射一致。取而代之的是,基于有效的3D Dirac Hamiltonian的实验数据与线性响应计算的直接比较表明,观察到的HALL响应的准定量化是3D电子结构的内在特性。我们的发现使ZRTE5中的大厅效应在2D系统中真正的3D对应物。

The quantum Hall effect (QHE) is traditionally considered a purely two-dimensional (2D) phenomenon. Recently, a three-dimensional (3D) version of the QHE has been reported in the Dirac semimetal ZrTe5. It was proposed to arise from a magnetic-field-driven Fermi surface instability, transforming the original 3D electron system into a stack of 2D sheets. Here, we report thermodynamic, thermoelectric and charge transport measurements on ZrTe5 in the quantum Hall regime. The measured thermodynamic properties: magnetization and ultrasound propagation, show no signatures of a Fermi surface instability, consistent with in-field single crystal X-ray diffraction. Instead, a direct comparison of the experimental data with linear response calculations based on an effective 3D Dirac Hamiltonian suggests that the quasi-quantization of the observed Hall response is an intrinsic property of the 3D electronic structure. Our findings render the Hall effect in ZrTe5 a truly 3D counterpart of the QHE in 2D systems.

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